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Evaluation and current-response based identification of insulation degradation for high utilized electrical machines in railway application

机译:基于评估和电流响应的铁路应用中高利用电器绝缘降解识别

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In order to investigate insulation degradation of high voltage traction drives, series of measurements on form wound coil specimens have been done. These stator bars have been aged by different accelerated aging cycles until the failure of the insulation is determined by voltage exposure tests. After every aging cycle the dissipation factor (tan δ) and capacitance (C) of the insulation system is recorded. With these non destructive diagnostic measurements, the correlation between the indicator values (tan δ, PI, C) and the degradation of the insulation strength until a breakdown can be investigated. Furthermore, an online insulation condition monitoring method for traction drives is proposed. In this method the inverter is used as a source of excitation with a simple switching pattern. The current transducer's transient response at step excitation is used to evaluate a change of the insulation system. The drive system containing machine, cabling and inverter can be represented with a complex network of electrical, also parasitic components like resistances, inductances and capacitances. Insulation degradation within the machine also changes these components as investigated at the accelerated aging tests, and thus the tendency can be used for the monitoring method.
机译:为了研究高压牵引驱动器的绝缘劣化,已经完成了形成缠绕线圈样本的一系列测量。这些定子杆已经通过不同的加速老化循环而老化,直到绝缘失效由电压曝光测试确定。在每个老化周期之后,记录绝缘系统的耗散因子(TANδ)和电容(C)。利用这些非破坏性诊断测量,可以研究指示值(TANδ,PI,C)与绝缘强度的劣化之间的相关性,直到可以击穿击穿。此外,提出了一种用于牵引驱动器的在线绝缘状态监测方法。在该方法中,逆变器用作简单的切换模式的激励源。在步进激励下,电流换能器的瞬态响应用于评估绝缘系统的变化。包含机器,电缆和逆变器的驱动系统可以用复杂的电气网络表示,也可以是电阻,电感和电容等寄生组件。在机器内的绝缘降解也改变了在加速老化试验处研究的这些组分,因此可以使用趋势来用于监测方法。

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